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Models for predicting drying stresses and strains in a film cast on a substrate: An alternative approach

机译:预测在基材上流延的薄膜中的干燥应力和应变的模型:替代方法

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摘要

Models based on Biot's theory for the deformation of a saturated porous body are presented for the stress and strain produced during drying of film cast on a substrate. A two-stage drying process is considered, where a constant-rate period is followed by a falling-rate period. The compressive stress that develops in the body is proportional to the evaporation rate and increases as the permeability of the body decreases. The maximum stress occurs at the drying surface at the end of the constant-rate period. During the falling-rate period, the receding drying front divides the material into saturated and unsaturated regions; the saturated region is subjected to compressive stress while the stress in the unsaturated region would be released if the solid network is elastic as assumed in the analysis. The receding drying front is accounted for in the models.
机译:提出了基于Biot理论的饱和多孔体变形模型,用于模型干燥在基材上流延的薄膜时产生的应力和应变。考虑了两阶段的干燥过程,其中恒定速率周期之后是下降速率周期。人体中产生的压应力与蒸发速率成正比,并随着人体渗透性的降低而增加。在恒定速率周期结束时,最大应力出现在干燥表面。在下降速率期间,后退的干燥前沿将物料分为饱和区和非饱和区。如分析中假设的那样,如果固体网络具有弹性,则饱和区域将受到压应力,而不饱和区域中的应力将被释放。模型中考虑了干燥后退的情况。

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